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氧化石墨烯双光束热透镜光谱法水基分散体的热物理和物理化学性质

The Thermophysical and Physicochemical Properties of the Aqueous Dispersion of Graphene Oxide Dual-Beam Thermal Lens Spectrometry.

作者信息

Khabibullin Vladislav R, Ratova Daria-Maria V, Stolbov Dmitrii N, Mikheev Ivan V, Proskurnin Mikhail A

机构信息

Analytical Chemistry Division, Chemistry Department, M. V. Lomonosov Moscow State University, d. 1, Str. 3, Lenin Hills, GSP-1, Moscow 119234, Russia.

Physical Chemistry Division, Chemistry Department, M. V. Lomonosov Moscow State University, d. 1, Str. 3, Lenin Hills, GSP-1, Moscow 119234, Russia.

出版信息

Nanomaterials (Basel). 2023 Jul 21;13(14):2126. doi: 10.3390/nano13142126.

Abstract

Modern heat-conducting materials require special attention to analyze their thermophysical properties. Compared to classical methods, thermal lens spectrometry (TLS) has advantages due to its high sensitivity to physical and chemical composition. To avoid a systematic error in the analysis of complex systems, it is necessary to realize the limits of the applicability of the method. This study considers the features of thermal-diffusivity measurements by TLS in the stationary state for dispersed systems with absorbances up to 0.05. The limits of applicability of the method in analyzing heterogeneous systems are shown, and a mathematical apparatus is proposed for indicating a systematic error in finding thermal diffusivity that does not exceed 1%. Graphene oxide (GO), which has attractive physicochemical properties, was used as the object of analysis. GO belongs to 2D objects, the study of which requires highly sensitive methods and special attention when discussing the results. The thermophysical properties of aqueous dispersions of graphene oxide in a wide range of concentrations (up to 2 g/L) and lateral sizes (up to 4 µm) were studied by TLS. It has been found that with increasing nanophase concentration, the thermal diffusivity of graphene oxide dispersions passes through a minimum, which can be used in solving thermal insulation problems. It has been established that prolonged laser irradiation of the dispersion leads to a change in thermal diffusivity, which indicates the photochemical reduction of graphene oxide.

摘要

现代导热材料需要特别关注以分析其热物理性质。与传统方法相比,热透镜光谱法(TLS)因其对物理和化学组成具有高灵敏度而具有优势。为避免在复杂系统分析中出现系统误差,有必要了解该方法的适用范围。本研究考虑了在稳态下通过TLS对吸光度高达0.05的分散系统进行热扩散率测量的特点。展示了该方法在分析非均相系统时的适用范围,并提出了一种数学方法来指示在热扩散率测量中不超过1%的系统误差。具有吸引人的物理化学性质的氧化石墨烯(GO)被用作分析对象。GO属于二维材料,对其研究需要高灵敏度方法,并且在讨论结果时需特别关注。通过TLS研究了氧化石墨烯在广泛浓度范围(高达2 g/L)和横向尺寸(高达4 µm)的水分散体的热物理性质。已发现随着纳米相浓度增加,氧化石墨烯分散体的热扩散率经过一个最小值,这可用于解决隔热问题。已确定对分散体进行长时间激光照射会导致热扩散率发生变化,这表明氧化石墨烯发生了光化学还原。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cbb/10385486/8a45f68536f5/nanomaterials-13-02126-g001.jpg

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